Mathematical modelling of decision cycles in a competitive environment with neutral parties
Dynamical Systems
2023-08-03 v2
Abstract
Decision making is a human process that is a fundamental part of competition. As a realisation of decision making, Command and Control, or C2, has been studied in the literature for adversarial populations, yet these models do not explicitly capture competition. Our work here seeks to enrich such competition models by extending ecologically inspired population models to include decision dynamics through coupling with a nonlinear system of oscillators (the Kuramoto equation) to model the action-perception cycle in decision making. Through asymmetric competition models of increasing complexity, we highlight the importance of competitive agility and decision making processes necessary for a population to be successful.
Keywords
Cite
@article{arxiv.2212.07029,
title = {Mathematical modelling of decision cycles in a competitive environment with neutral parties},
author = {Timothy McLennan-Smith and Alexander Kalloniatis and Simon Watt and Zlatko Jovanoski and Harvinder Sidhu and Dale Roberts and Isaac Towers},
journal= {arXiv preprint arXiv:2212.07029},
year = {2023}
}
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33 pages